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FS-Cache: Fix cancellation of in-progress operation
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b5108822
DH
1/* Cache page management and data I/O routines
2 *
3 * Copyright (C) 2004-2008 Red Hat, Inc. All Rights Reserved.
4 * Written by David Howells (dhowells@redhat.com)
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
10 */
11
12#define FSCACHE_DEBUG_LEVEL PAGE
13#include <linux/module.h>
14#include <linux/fscache-cache.h>
15#include <linux/buffer_head.h>
16#include <linux/pagevec.h>
5a0e3ad6 17#include <linux/slab.h>
b5108822
DH
18#include "internal.h"
19
20/*
21 * check to see if a page is being written to the cache
22 */
23bool __fscache_check_page_write(struct fscache_cookie *cookie, struct page *page)
24{
25 void *val;
26
27 rcu_read_lock();
28 val = radix_tree_lookup(&cookie->stores, page->index);
29 rcu_read_unlock();
30
31 return val != NULL;
32}
33EXPORT_SYMBOL(__fscache_check_page_write);
34
35/*
36 * wait for a page to finish being written to the cache
37 */
38void __fscache_wait_on_page_write(struct fscache_cookie *cookie, struct page *page)
39{
40 wait_queue_head_t *wq = bit_waitqueue(&cookie->flags, 0);
41
42 wait_event(*wq, !__fscache_check_page_write(cookie, page));
43}
44EXPORT_SYMBOL(__fscache_wait_on_page_write);
45
9776de96
MT
46/*
47 * wait for a page to finish being written to the cache. Put a timeout here
48 * since we might be called recursively via parent fs.
49 */
50static
51bool release_page_wait_timeout(struct fscache_cookie *cookie, struct page *page)
52{
53 wait_queue_head_t *wq = bit_waitqueue(&cookie->flags, 0);
54
55 return wait_event_timeout(*wq, !__fscache_check_page_write(cookie, page),
56 HZ);
57}
58
201a1542
DH
59/*
60 * decide whether a page can be released, possibly by cancelling a store to it
61 * - we're allowed to sleep if __GFP_WAIT is flagged
62 */
63bool __fscache_maybe_release_page(struct fscache_cookie *cookie,
64 struct page *page,
65 gfp_t gfp)
66{
67 struct page *xpage;
68 void *val;
69
70 _enter("%p,%p,%x", cookie, page, gfp);
71
8c209ce7 72try_again:
201a1542
DH
73 rcu_read_lock();
74 val = radix_tree_lookup(&cookie->stores, page->index);
75 if (!val) {
76 rcu_read_unlock();
77 fscache_stat(&fscache_n_store_vmscan_not_storing);
78 __fscache_uncache_page(cookie, page);
79 return true;
80 }
81
82 /* see if the page is actually undergoing storage - if so we can't get
83 * rid of it till the cache has finished with it */
84 if (radix_tree_tag_get(&cookie->stores, page->index,
85 FSCACHE_COOKIE_STORING_TAG)) {
86 rcu_read_unlock();
87 goto page_busy;
88 }
89
90 /* the page is pending storage, so we attempt to cancel the store and
91 * discard the store request so that the page can be reclaimed */
92 spin_lock(&cookie->stores_lock);
93 rcu_read_unlock();
94
95 if (radix_tree_tag_get(&cookie->stores, page->index,
96 FSCACHE_COOKIE_STORING_TAG)) {
97 /* the page started to undergo storage whilst we were looking,
98 * so now we can only wait or return */
99 spin_unlock(&cookie->stores_lock);
100 goto page_busy;
101 }
102
103 xpage = radix_tree_delete(&cookie->stores, page->index);
104 spin_unlock(&cookie->stores_lock);
105
106 if (xpage) {
107 fscache_stat(&fscache_n_store_vmscan_cancelled);
108 fscache_stat(&fscache_n_store_radix_deletes);
109 ASSERTCMP(xpage, ==, page);
110 } else {
111 fscache_stat(&fscache_n_store_vmscan_gone);
112 }
113
114 wake_up_bit(&cookie->flags, 0);
115 if (xpage)
116 page_cache_release(xpage);
117 __fscache_uncache_page(cookie, page);
118 return true;
119
120page_busy:
8c209ce7
DH
121 /* We will wait here if we're allowed to, but that could deadlock the
122 * allocator as the work threads writing to the cache may all end up
123 * sleeping on memory allocation, so we may need to impose a timeout
124 * too. */
0c59a95d 125 if (!(gfp & __GFP_WAIT) || !(gfp & __GFP_FS)) {
8c209ce7
DH
126 fscache_stat(&fscache_n_store_vmscan_busy);
127 return false;
128 }
129
130 fscache_stat(&fscache_n_store_vmscan_wait);
9776de96
MT
131 if (!release_page_wait_timeout(cookie, page))
132 _debug("fscache writeout timeout page: %p{%lx}",
133 page, page->index);
134
8c209ce7
DH
135 gfp &= ~__GFP_WAIT;
136 goto try_again;
201a1542
DH
137}
138EXPORT_SYMBOL(__fscache_maybe_release_page);
139
b5108822
DH
140/*
141 * note that a page has finished being written to the cache
142 */
1bccf513
DH
143static void fscache_end_page_write(struct fscache_object *object,
144 struct page *page)
b5108822 145{
1bccf513
DH
146 struct fscache_cookie *cookie;
147 struct page *xpage = NULL;
b5108822 148
1bccf513
DH
149 spin_lock(&object->lock);
150 cookie = object->cookie;
151 if (cookie) {
152 /* delete the page from the tree if it is now no longer
153 * pending */
154 spin_lock(&cookie->stores_lock);
201a1542
DH
155 radix_tree_tag_clear(&cookie->stores, page->index,
156 FSCACHE_COOKIE_STORING_TAG);
285e728b
DH
157 if (!radix_tree_tag_get(&cookie->stores, page->index,
158 FSCACHE_COOKIE_PENDING_TAG)) {
159 fscache_stat(&fscache_n_store_radix_deletes);
160 xpage = radix_tree_delete(&cookie->stores, page->index);
161 }
1bccf513
DH
162 spin_unlock(&cookie->stores_lock);
163 wake_up_bit(&cookie->flags, 0);
164 }
165 spin_unlock(&object->lock);
166 if (xpage)
167 page_cache_release(xpage);
b5108822
DH
168}
169
170/*
171 * actually apply the changed attributes to a cache object
172 */
173static void fscache_attr_changed_op(struct fscache_operation *op)
174{
175 struct fscache_object *object = op->object;
440f0aff 176 int ret;
b5108822
DH
177
178 _enter("{OBJ%x OP%x}", object->debug_id, op->debug_id);
179
180 fscache_stat(&fscache_n_attr_changed_calls);
181
8fb883f3 182 if (fscache_object_is_active(object)) {
52bd75fd 183 fscache_stat(&fscache_n_cop_attr_changed);
440f0aff 184 ret = object->cache->ops->attr_changed(object);
52bd75fd 185 fscache_stat_d(&fscache_n_cop_attr_changed);
440f0aff
DH
186 if (ret < 0)
187 fscache_abort_object(object);
188 }
b5108822 189
1f372dff 190 fscache_op_complete(op, true);
b5108822
DH
191 _leave("");
192}
193
194/*
195 * notification that the attributes on an object have changed
196 */
197int __fscache_attr_changed(struct fscache_cookie *cookie)
198{
199 struct fscache_operation *op;
200 struct fscache_object *object;
3e1199dc 201 bool wake_cookie = false;
b5108822
DH
202
203 _enter("%p", cookie);
204
205 ASSERTCMP(cookie->def->type, !=, FSCACHE_COOKIE_TYPE_INDEX);
206
207 fscache_stat(&fscache_n_attr_changed);
208
209 op = kzalloc(sizeof(*op), GFP_KERNEL);
210 if (!op) {
211 fscache_stat(&fscache_n_attr_changed_nomem);
212 _leave(" = -ENOMEM");
213 return -ENOMEM;
214 }
215
8af7c124 216 fscache_operation_init(op, fscache_attr_changed_op, NULL);
8fb883f3
DH
217 op->flags = FSCACHE_OP_ASYNC |
218 (1 << FSCACHE_OP_EXCLUSIVE) |
219 (1 << FSCACHE_OP_UNUSE_COOKIE);
b5108822
DH
220
221 spin_lock(&cookie->lock);
222
94d30ae9
DH
223 if (!fscache_cookie_enabled(cookie) ||
224 hlist_empty(&cookie->backing_objects))
b5108822
DH
225 goto nobufs;
226 object = hlist_entry(cookie->backing_objects.first,
227 struct fscache_object, cookie_link);
228
8fb883f3 229 __fscache_use_cookie(cookie);
b5108822 230 if (fscache_submit_exclusive_op(object, op) < 0)
3e1199dc 231 goto nobufs_dec;
b5108822
DH
232 spin_unlock(&cookie->lock);
233 fscache_stat(&fscache_n_attr_changed_ok);
234 fscache_put_operation(op);
235 _leave(" = 0");
236 return 0;
237
3e1199dc 238nobufs_dec:
8fb883f3 239 wake_cookie = __fscache_unuse_cookie(cookie);
3e1199dc 240nobufs:
b5108822
DH
241 spin_unlock(&cookie->lock);
242 kfree(op);
8fb883f3
DH
243 if (wake_cookie)
244 __fscache_wake_unused_cookie(cookie);
b5108822
DH
245 fscache_stat(&fscache_n_attr_changed_nobufs);
246 _leave(" = %d", -ENOBUFS);
247 return -ENOBUFS;
248}
249EXPORT_SYMBOL(__fscache_attr_changed);
250
b5108822
DH
251/*
252 * release a retrieval op reference
253 */
254static void fscache_release_retrieval_op(struct fscache_operation *_op)
255{
256 struct fscache_retrieval *op =
257 container_of(_op, struct fscache_retrieval, op);
258
259 _enter("{OP%x}", op->op.debug_id);
260
1bb4b7f9 261 ASSERTCMP(atomic_read(&op->n_pages), ==, 0);
9f10523f 262
b5108822
DH
263 fscache_hist(fscache_retrieval_histogram, op->start_time);
264 if (op->context)
265 fscache_put_context(op->op.object->cookie, op->context);
266
267 _leave("");
268}
269
270/*
271 * allocate a retrieval op
272 */
273static struct fscache_retrieval *fscache_alloc_retrieval(
1362729b 274 struct fscache_cookie *cookie,
b5108822
DH
275 struct address_space *mapping,
276 fscache_rw_complete_t end_io_func,
277 void *context)
278{
279 struct fscache_retrieval *op;
280
281 /* allocate a retrieval operation and attempt to submit it */
282 op = kzalloc(sizeof(*op), GFP_NOIO);
283 if (!op) {
284 fscache_stat(&fscache_n_retrievals_nomem);
285 return NULL;
286 }
287
8af7c124 288 fscache_operation_init(&op->op, NULL, fscache_release_retrieval_op);
1362729b
DH
289 op->op.flags = FSCACHE_OP_MYTHREAD |
290 (1UL << FSCACHE_OP_WAITING) |
291 (1UL << FSCACHE_OP_UNUSE_COOKIE);
b5108822
DH
292 op->mapping = mapping;
293 op->end_io_func = end_io_func;
294 op->context = context;
295 op->start_time = jiffies;
b5108822
DH
296 INIT_LIST_HEAD(&op->to_do);
297 return op;
298}
299
300/*
301 * wait for a deferred lookup to complete
302 */
da9803bc 303int fscache_wait_for_deferred_lookup(struct fscache_cookie *cookie)
b5108822
DH
304{
305 unsigned long jif;
306
307 _enter("");
308
309 if (!test_bit(FSCACHE_COOKIE_LOOKING_UP, &cookie->flags)) {
310 _leave(" = 0 [imm]");
311 return 0;
312 }
313
314 fscache_stat(&fscache_n_retrievals_wait);
315
316 jif = jiffies;
317 if (wait_on_bit(&cookie->flags, FSCACHE_COOKIE_LOOKING_UP,
b5108822
DH
318 TASK_INTERRUPTIBLE) != 0) {
319 fscache_stat(&fscache_n_retrievals_intr);
320 _leave(" = -ERESTARTSYS");
321 return -ERESTARTSYS;
322 }
323
324 ASSERT(!test_bit(FSCACHE_COOKIE_LOOKING_UP, &cookie->flags));
325
326 smp_rmb();
327 fscache_hist(fscache_retrieval_delay_histogram, jif);
328 _leave(" = 0 [dly]");
329 return 0;
330}
331
91c7fbbf
DH
332/*
333 * Handle cancellation of a pending retrieval op
334 */
335static void fscache_do_cancel_retrieval(struct fscache_operation *_op)
336{
337 struct fscache_retrieval *op =
338 container_of(_op, struct fscache_retrieval, op);
339
1bb4b7f9 340 atomic_set(&op->n_pages, 0);
91c7fbbf
DH
341}
342
60d543ca
DH
343/*
344 * wait for an object to become active (or dead)
345 */
da9803bc
DH
346int fscache_wait_for_operation_activation(struct fscache_object *object,
347 struct fscache_operation *op,
348 atomic_t *stat_op_waits,
349 atomic_t *stat_object_dead,
350 void (*do_cancel)(struct fscache_operation *))
60d543ca
DH
351{
352 int ret;
353
da9803bc 354 if (!test_bit(FSCACHE_OP_WAITING, &op->flags))
60d543ca
DH
355 goto check_if_dead;
356
357 _debug(">>> WT");
da9803bc
DH
358 if (stat_op_waits)
359 fscache_stat(stat_op_waits);
360 if (wait_on_bit(&op->flags, FSCACHE_OP_WAITING,
9c04caa8 361 TASK_INTERRUPTIBLE) != 0) {
418b7eb9 362 ret = fscache_cancel_op(op, do_cancel, false);
60d543ca
DH
363 if (ret == 0)
364 return -ERESTARTSYS;
365
366 /* it's been removed from the pending queue by another party,
367 * so we should get to run shortly */
da9803bc 368 wait_on_bit(&op->flags, FSCACHE_OP_WAITING,
74316201 369 TASK_UNINTERRUPTIBLE);
60d543ca
DH
370 }
371 _debug("<<< GO");
372
373check_if_dead:
da9803bc
DH
374 if (op->state == FSCACHE_OP_ST_CANCELLED) {
375 if (stat_object_dead)
376 fscache_stat(stat_object_dead);
9f10523f
DH
377 _leave(" = -ENOBUFS [cancelled]");
378 return -ENOBUFS;
379 }
87021526
DH
380 if (unlikely(fscache_object_is_dying(object) ||
381 fscache_cache_is_broken(object))) {
382 enum fscache_operation_state state = op->state;
418b7eb9 383 fscache_cancel_op(op, do_cancel, true);
da9803bc
DH
384 if (stat_object_dead)
385 fscache_stat(stat_object_dead);
87021526 386 _leave(" = -ENOBUFS [obj dead %d]", state);
60d543ca
DH
387 return -ENOBUFS;
388 }
389 return 0;
390}
391
b5108822
DH
392/*
393 * read a page from the cache or allocate a block in which to store it
394 * - we return:
395 * -ENOMEM - out of memory, nothing done
396 * -ERESTARTSYS - interrupted
397 * -ENOBUFS - no backing object available in which to cache the block
398 * -ENODATA - no data available in the backing object for this block
399 * 0 - dispatched a read - it'll call end_io_func() when finished
400 */
401int __fscache_read_or_alloc_page(struct fscache_cookie *cookie,
402 struct page *page,
403 fscache_rw_complete_t end_io_func,
404 void *context,
405 gfp_t gfp)
406{
407 struct fscache_retrieval *op;
408 struct fscache_object *object;
8fb883f3 409 bool wake_cookie = false;
b5108822
DH
410 int ret;
411
412 _enter("%p,%p,,,", cookie, page);
413
414 fscache_stat(&fscache_n_retrievals);
415
416 if (hlist_empty(&cookie->backing_objects))
417 goto nobufs;
418
ef778e7a
DH
419 if (test_bit(FSCACHE_COOKIE_INVALIDATING, &cookie->flags)) {
420 _leave(" = -ENOBUFS [invalidating]");
421 return -ENOBUFS;
422 }
423
b5108822
DH
424 ASSERTCMP(cookie->def->type, !=, FSCACHE_COOKIE_TYPE_INDEX);
425 ASSERTCMP(page, !=, NULL);
426
427 if (fscache_wait_for_deferred_lookup(cookie) < 0)
428 return -ERESTARTSYS;
429
1362729b 430 op = fscache_alloc_retrieval(cookie, page->mapping,
94d30ae9 431 end_io_func, context);
b5108822
DH
432 if (!op) {
433 _leave(" = -ENOMEM");
434 return -ENOMEM;
435 }
1bb4b7f9 436 atomic_set(&op->n_pages, 1);
b5108822
DH
437
438 spin_lock(&cookie->lock);
439
94d30ae9
DH
440 if (!fscache_cookie_enabled(cookie) ||
441 hlist_empty(&cookie->backing_objects))
b5108822
DH
442 goto nobufs_unlock;
443 object = hlist_entry(cookie->backing_objects.first,
444 struct fscache_object, cookie_link);
445
caaef690 446 ASSERT(test_bit(FSCACHE_OBJECT_IS_LOOKED_UP, &object->flags));
b5108822 447
8fb883f3 448 __fscache_use_cookie(cookie);
4fbf4291 449 atomic_inc(&object->n_reads);
9f10523f 450 __set_bit(FSCACHE_OP_DEC_READ_CNT, &op->op.flags);
4fbf4291 451
b5108822 452 if (fscache_submit_op(object, &op->op) < 0)
9f10523f 453 goto nobufs_unlock_dec;
b5108822
DH
454 spin_unlock(&cookie->lock);
455
456 fscache_stat(&fscache_n_retrieval_ops);
457
458 /* pin the netfs read context in case we need to do the actual netfs
459 * read because we've encountered a cache read failure */
460 fscache_get_context(object->cookie, op->context);
461
462 /* we wait for the operation to become active, and then process it
463 * *here*, in this thread, and not in the thread pool */
da9803bc
DH
464 ret = fscache_wait_for_operation_activation(
465 object, &op->op,
60d543ca 466 __fscache_stat(&fscache_n_retrieval_op_waits),
da9803bc
DH
467 __fscache_stat(&fscache_n_retrievals_object_dead),
468 fscache_do_cancel_retrieval);
60d543ca
DH
469 if (ret < 0)
470 goto error;
b5108822
DH
471
472 /* ask the cache to honour the operation */
473 if (test_bit(FSCACHE_COOKIE_NO_DATA_YET, &object->cookie->flags)) {
52bd75fd 474 fscache_stat(&fscache_n_cop_allocate_page);
b5108822 475 ret = object->cache->ops->allocate_page(op, page, gfp);
52bd75fd 476 fscache_stat_d(&fscache_n_cop_allocate_page);
b5108822
DH
477 if (ret == 0)
478 ret = -ENODATA;
479 } else {
52bd75fd 480 fscache_stat(&fscache_n_cop_read_or_alloc_page);
b5108822 481 ret = object->cache->ops->read_or_alloc_page(op, page, gfp);
52bd75fd 482 fscache_stat_d(&fscache_n_cop_read_or_alloc_page);
b5108822
DH
483 }
484
5753c441 485error:
b5108822
DH
486 if (ret == -ENOMEM)
487 fscache_stat(&fscache_n_retrievals_nomem);
488 else if (ret == -ERESTARTSYS)
489 fscache_stat(&fscache_n_retrievals_intr);
490 else if (ret == -ENODATA)
491 fscache_stat(&fscache_n_retrievals_nodata);
492 else if (ret < 0)
493 fscache_stat(&fscache_n_retrievals_nobufs);
494 else
495 fscache_stat(&fscache_n_retrievals_ok);
496
497 fscache_put_retrieval(op);
498 _leave(" = %d", ret);
499 return ret;
500
9f10523f
DH
501nobufs_unlock_dec:
502 atomic_dec(&object->n_reads);
8fb883f3 503 wake_cookie = __fscache_unuse_cookie(cookie);
b5108822
DH
504nobufs_unlock:
505 spin_unlock(&cookie->lock);
8fb883f3
DH
506 if (wake_cookie)
507 __fscache_wake_unused_cookie(cookie);
b5108822
DH
508 kfree(op);
509nobufs:
510 fscache_stat(&fscache_n_retrievals_nobufs);
511 _leave(" = -ENOBUFS");
512 return -ENOBUFS;
513}
514EXPORT_SYMBOL(__fscache_read_or_alloc_page);
515
516/*
517 * read a list of page from the cache or allocate a block in which to store
518 * them
519 * - we return:
520 * -ENOMEM - out of memory, some pages may be being read
521 * -ERESTARTSYS - interrupted, some pages may be being read
522 * -ENOBUFS - no backing object or space available in which to cache any
523 * pages not being read
524 * -ENODATA - no data available in the backing object for some or all of
525 * the pages
526 * 0 - dispatched a read on all pages
527 *
528 * end_io_func() will be called for each page read from the cache as it is
529 * finishes being read
530 *
531 * any pages for which a read is dispatched will be removed from pages and
532 * nr_pages
533 */
534int __fscache_read_or_alloc_pages(struct fscache_cookie *cookie,
535 struct address_space *mapping,
536 struct list_head *pages,
537 unsigned *nr_pages,
538 fscache_rw_complete_t end_io_func,
539 void *context,
540 gfp_t gfp)
541{
b5108822
DH
542 struct fscache_retrieval *op;
543 struct fscache_object *object;
8fb883f3 544 bool wake_cookie = false;
b5108822
DH
545 int ret;
546
547 _enter("%p,,%d,,,", cookie, *nr_pages);
548
549 fscache_stat(&fscache_n_retrievals);
550
551 if (hlist_empty(&cookie->backing_objects))
552 goto nobufs;
553
ef778e7a
DH
554 if (test_bit(FSCACHE_COOKIE_INVALIDATING, &cookie->flags)) {
555 _leave(" = -ENOBUFS [invalidating]");
556 return -ENOBUFS;
557 }
558
b5108822
DH
559 ASSERTCMP(cookie->def->type, !=, FSCACHE_COOKIE_TYPE_INDEX);
560 ASSERTCMP(*nr_pages, >, 0);
561 ASSERT(!list_empty(pages));
562
563 if (fscache_wait_for_deferred_lookup(cookie) < 0)
564 return -ERESTARTSYS;
565
1362729b 566 op = fscache_alloc_retrieval(cookie, mapping, end_io_func, context);
b5108822
DH
567 if (!op)
568 return -ENOMEM;
1bb4b7f9 569 atomic_set(&op->n_pages, *nr_pages);
b5108822
DH
570
571 spin_lock(&cookie->lock);
572
94d30ae9
DH
573 if (!fscache_cookie_enabled(cookie) ||
574 hlist_empty(&cookie->backing_objects))
b5108822
DH
575 goto nobufs_unlock;
576 object = hlist_entry(cookie->backing_objects.first,
577 struct fscache_object, cookie_link);
578
8fb883f3 579 __fscache_use_cookie(cookie);
4fbf4291 580 atomic_inc(&object->n_reads);
9f10523f 581 __set_bit(FSCACHE_OP_DEC_READ_CNT, &op->op.flags);
4fbf4291 582
b5108822 583 if (fscache_submit_op(object, &op->op) < 0)
9f10523f 584 goto nobufs_unlock_dec;
b5108822
DH
585 spin_unlock(&cookie->lock);
586
587 fscache_stat(&fscache_n_retrieval_ops);
588
589 /* pin the netfs read context in case we need to do the actual netfs
590 * read because we've encountered a cache read failure */
591 fscache_get_context(object->cookie, op->context);
592
593 /* we wait for the operation to become active, and then process it
594 * *here*, in this thread, and not in the thread pool */
da9803bc
DH
595 ret = fscache_wait_for_operation_activation(
596 object, &op->op,
60d543ca 597 __fscache_stat(&fscache_n_retrieval_op_waits),
da9803bc
DH
598 __fscache_stat(&fscache_n_retrievals_object_dead),
599 fscache_do_cancel_retrieval);
60d543ca
DH
600 if (ret < 0)
601 goto error;
b5108822
DH
602
603 /* ask the cache to honour the operation */
52bd75fd
DH
604 if (test_bit(FSCACHE_COOKIE_NO_DATA_YET, &object->cookie->flags)) {
605 fscache_stat(&fscache_n_cop_allocate_pages);
606 ret = object->cache->ops->allocate_pages(
607 op, pages, nr_pages, gfp);
608 fscache_stat_d(&fscache_n_cop_allocate_pages);
609 } else {
610 fscache_stat(&fscache_n_cop_read_or_alloc_pages);
611 ret = object->cache->ops->read_or_alloc_pages(
612 op, pages, nr_pages, gfp);
613 fscache_stat_d(&fscache_n_cop_read_or_alloc_pages);
614 }
b5108822 615
5753c441 616error:
b5108822
DH
617 if (ret == -ENOMEM)
618 fscache_stat(&fscache_n_retrievals_nomem);
619 else if (ret == -ERESTARTSYS)
620 fscache_stat(&fscache_n_retrievals_intr);
621 else if (ret == -ENODATA)
622 fscache_stat(&fscache_n_retrievals_nodata);
623 else if (ret < 0)
624 fscache_stat(&fscache_n_retrievals_nobufs);
625 else
626 fscache_stat(&fscache_n_retrievals_ok);
627
628 fscache_put_retrieval(op);
629 _leave(" = %d", ret);
630 return ret;
631
9f10523f
DH
632nobufs_unlock_dec:
633 atomic_dec(&object->n_reads);
8fb883f3 634 wake_cookie = __fscache_unuse_cookie(cookie);
b5108822
DH
635nobufs_unlock:
636 spin_unlock(&cookie->lock);
637 kfree(op);
8fb883f3
DH
638 if (wake_cookie)
639 __fscache_wake_unused_cookie(cookie);
b5108822
DH
640nobufs:
641 fscache_stat(&fscache_n_retrievals_nobufs);
642 _leave(" = -ENOBUFS");
643 return -ENOBUFS;
644}
645EXPORT_SYMBOL(__fscache_read_or_alloc_pages);
646
647/*
648 * allocate a block in the cache on which to store a page
649 * - we return:
650 * -ENOMEM - out of memory, nothing done
651 * -ERESTARTSYS - interrupted
652 * -ENOBUFS - no backing object available in which to cache the block
653 * 0 - block allocated
654 */
655int __fscache_alloc_page(struct fscache_cookie *cookie,
656 struct page *page,
657 gfp_t gfp)
658{
659 struct fscache_retrieval *op;
660 struct fscache_object *object;
8fb883f3 661 bool wake_cookie = false;
b5108822
DH
662 int ret;
663
664 _enter("%p,%p,,,", cookie, page);
665
666 fscache_stat(&fscache_n_allocs);
667
668 if (hlist_empty(&cookie->backing_objects))
669 goto nobufs;
670
671 ASSERTCMP(cookie->def->type, !=, FSCACHE_COOKIE_TYPE_INDEX);
672 ASSERTCMP(page, !=, NULL);
673
ef778e7a
DH
674 if (test_bit(FSCACHE_COOKIE_INVALIDATING, &cookie->flags)) {
675 _leave(" = -ENOBUFS [invalidating]");
676 return -ENOBUFS;
677 }
678
b5108822
DH
679 if (fscache_wait_for_deferred_lookup(cookie) < 0)
680 return -ERESTARTSYS;
681
1362729b 682 op = fscache_alloc_retrieval(cookie, page->mapping, NULL, NULL);
b5108822
DH
683 if (!op)
684 return -ENOMEM;
1bb4b7f9 685 atomic_set(&op->n_pages, 1);
b5108822
DH
686
687 spin_lock(&cookie->lock);
688
94d30ae9
DH
689 if (!fscache_cookie_enabled(cookie) ||
690 hlist_empty(&cookie->backing_objects))
b5108822
DH
691 goto nobufs_unlock;
692 object = hlist_entry(cookie->backing_objects.first,
693 struct fscache_object, cookie_link);
694
8fb883f3 695 __fscache_use_cookie(cookie);
b5108822 696 if (fscache_submit_op(object, &op->op) < 0)
8fb883f3 697 goto nobufs_unlock_dec;
b5108822
DH
698 spin_unlock(&cookie->lock);
699
700 fscache_stat(&fscache_n_alloc_ops);
701
da9803bc
DH
702 ret = fscache_wait_for_operation_activation(
703 object, &op->op,
60d543ca 704 __fscache_stat(&fscache_n_alloc_op_waits),
da9803bc
DH
705 __fscache_stat(&fscache_n_allocs_object_dead),
706 fscache_do_cancel_retrieval);
60d543ca
DH
707 if (ret < 0)
708 goto error;
b5108822
DH
709
710 /* ask the cache to honour the operation */
52bd75fd 711 fscache_stat(&fscache_n_cop_allocate_page);
b5108822 712 ret = object->cache->ops->allocate_page(op, page, gfp);
52bd75fd 713 fscache_stat_d(&fscache_n_cop_allocate_page);
b5108822 714
5753c441
DH
715error:
716 if (ret == -ERESTARTSYS)
717 fscache_stat(&fscache_n_allocs_intr);
718 else if (ret < 0)
b5108822
DH
719 fscache_stat(&fscache_n_allocs_nobufs);
720 else
721 fscache_stat(&fscache_n_allocs_ok);
722
723 fscache_put_retrieval(op);
724 _leave(" = %d", ret);
725 return ret;
726
8fb883f3
DH
727nobufs_unlock_dec:
728 wake_cookie = __fscache_unuse_cookie(cookie);
b5108822
DH
729nobufs_unlock:
730 spin_unlock(&cookie->lock);
731 kfree(op);
8fb883f3
DH
732 if (wake_cookie)
733 __fscache_wake_unused_cookie(cookie);
b5108822
DH
734nobufs:
735 fscache_stat(&fscache_n_allocs_nobufs);
736 _leave(" = -ENOBUFS");
737 return -ENOBUFS;
738}
739EXPORT_SYMBOL(__fscache_alloc_page);
740
5a6f282a
MT
741/*
742 * Unmark pages allocate in the readahead code path (via:
743 * fscache_readpages_or_alloc) after delegating to the base filesystem
744 */
745void __fscache_readpages_cancel(struct fscache_cookie *cookie,
746 struct list_head *pages)
747{
748 struct page *page;
749
750 list_for_each_entry(page, pages, lru) {
751 if (PageFsCache(page))
752 __fscache_uncache_page(cookie, page);
753 }
754}
755EXPORT_SYMBOL(__fscache_readpages_cancel);
756
b5108822
DH
757/*
758 * release a write op reference
759 */
760static void fscache_release_write_op(struct fscache_operation *_op)
761{
762 _enter("{OP%x}", _op->debug_id);
763}
764
765/*
766 * perform the background storage of a page into the cache
767 */
768static void fscache_write_op(struct fscache_operation *_op)
769{
770 struct fscache_storage *op =
771 container_of(_op, struct fscache_storage, op);
772 struct fscache_object *object = op->op.object;
1bccf513 773 struct fscache_cookie *cookie;
b5108822
DH
774 struct page *page;
775 unsigned n;
776 void *results[1];
777 int ret;
778
779 _enter("{OP%x,%d}", op->op.debug_id, atomic_read(&op->op.usage));
780
b5108822 781 spin_lock(&object->lock);
1bccf513 782 cookie = object->cookie;
b5108822 783
7ef001e9
DH
784 if (!fscache_object_is_active(object)) {
785 /* If we get here, then the on-disk cache object likely longer
786 * exists, so we should just cancel this write operation.
787 */
b5108822 788 spin_unlock(&object->lock);
1f372dff 789 fscache_op_complete(&op->op, false);
7ef001e9
DH
790 _leave(" [inactive]");
791 return;
792 }
793
794 if (!cookie) {
795 /* If we get here, then the cookie belonging to the object was
796 * detached, probably by the cookie being withdrawn due to
797 * memory pressure, which means that the pages we might write
798 * to the cache from no longer exist - therefore, we can just
799 * cancel this write operation.
800 */
801 spin_unlock(&object->lock);
1f372dff 802 fscache_op_complete(&op->op, false);
caaef690
DH
803 _leave(" [cancel] op{f=%lx s=%u} obj{s=%s f=%lx}",
804 _op->flags, _op->state, object->state->short_name,
805 object->flags);
b5108822
DH
806 return;
807 }
808
1bccf513
DH
809 spin_lock(&cookie->stores_lock);
810
b5108822
DH
811 fscache_stat(&fscache_n_store_calls);
812
813 /* find a page to store */
814 page = NULL;
815 n = radix_tree_gang_lookup_tag(&cookie->stores, results, 0, 1,
816 FSCACHE_COOKIE_PENDING_TAG);
817 if (n != 1)
818 goto superseded;
819 page = results[0];
820 _debug("gang %d [%lx]", n, page->index);
1bccf513
DH
821 if (page->index > op->store_limit) {
822 fscache_stat(&fscache_n_store_pages_over_limit);
b5108822 823 goto superseded;
1bccf513 824 }
b5108822 825
08a66859
DC
826 radix_tree_tag_set(&cookie->stores, page->index,
827 FSCACHE_COOKIE_STORING_TAG);
828 radix_tree_tag_clear(&cookie->stores, page->index,
829 FSCACHE_COOKIE_PENDING_TAG);
b5108822 830
1bccf513 831 spin_unlock(&cookie->stores_lock);
b5108822 832 spin_unlock(&object->lock);
b5108822 833
08a66859
DC
834 fscache_stat(&fscache_n_store_pages);
835 fscache_stat(&fscache_n_cop_write_page);
836 ret = object->cache->ops->write_page(op, page);
837 fscache_stat_d(&fscache_n_cop_write_page);
08a66859
DC
838 fscache_end_page_write(object, page);
839 if (ret < 0) {
08a66859 840 fscache_abort_object(object);
1f372dff 841 fscache_op_complete(&op->op, true);
08a66859
DC
842 } else {
843 fscache_enqueue_operation(&op->op);
b5108822
DH
844 }
845
846 _leave("");
847 return;
848
849superseded:
850 /* this writer is going away and there aren't any more things to
851 * write */
852 _debug("cease");
1bccf513 853 spin_unlock(&cookie->stores_lock);
b5108822
DH
854 clear_bit(FSCACHE_OBJECT_PENDING_WRITE, &object->flags);
855 spin_unlock(&object->lock);
1f372dff 856 fscache_op_complete(&op->op, true);
b5108822
DH
857 _leave("");
858}
859
ef778e7a
DH
860/*
861 * Clear the pages pending writing for invalidation
862 */
863void fscache_invalidate_writes(struct fscache_cookie *cookie)
864{
865 struct page *page;
866 void *results[16];
867 int n, i;
868
869 _enter("");
870
ee8be57b
SAS
871 for (;;) {
872 spin_lock(&cookie->stores_lock);
873 n = radix_tree_gang_lookup_tag(&cookie->stores, results, 0,
874 ARRAY_SIZE(results),
875 FSCACHE_COOKIE_PENDING_TAG);
876 if (n == 0) {
877 spin_unlock(&cookie->stores_lock);
878 break;
879 }
880
ef778e7a
DH
881 for (i = n - 1; i >= 0; i--) {
882 page = results[i];
883 radix_tree_delete(&cookie->stores, page->index);
884 }
885
886 spin_unlock(&cookie->stores_lock);
887
888 for (i = n - 1; i >= 0; i--)
889 page_cache_release(results[i]);
890 }
891
ef778e7a
DH
892 _leave("");
893}
894
b5108822
DH
895/*
896 * request a page be stored in the cache
897 * - returns:
898 * -ENOMEM - out of memory, nothing done
899 * -ENOBUFS - no backing object available in which to cache the page
900 * 0 - dispatched a write - it'll call end_io_func() when finished
901 *
902 * if the cookie still has a backing object at this point, that object can be
903 * in one of a few states with respect to storage processing:
904 *
905 * (1) negative lookup, object not yet created (FSCACHE_COOKIE_CREATING is
906 * set)
907 *
caaef690 908 * (a) no writes yet
b5108822
DH
909 *
910 * (b) writes deferred till post-creation (mark page for writing and
911 * return immediately)
912 *
913 * (2) negative lookup, object created, initial fill being made from netfs
b5108822
DH
914 *
915 * (a) fill point not yet reached this page (mark page for writing and
916 * return)
917 *
918 * (b) fill point passed this page (queue op to store this page)
919 *
920 * (3) object extant (queue op to store this page)
921 *
922 * any other state is invalid
923 */
924int __fscache_write_page(struct fscache_cookie *cookie,
925 struct page *page,
926 gfp_t gfp)
927{
928 struct fscache_storage *op;
929 struct fscache_object *object;
8fb883f3 930 bool wake_cookie = false;
b5108822
DH
931 int ret;
932
933 _enter("%p,%x,", cookie, (u32) page->flags);
934
935 ASSERTCMP(cookie->def->type, !=, FSCACHE_COOKIE_TYPE_INDEX);
936 ASSERT(PageFsCache(page));
937
938 fscache_stat(&fscache_n_stores);
939
ef778e7a
DH
940 if (test_bit(FSCACHE_COOKIE_INVALIDATING, &cookie->flags)) {
941 _leave(" = -ENOBUFS [invalidating]");
942 return -ENOBUFS;
943 }
944
5f4f9f4a 945 op = kzalloc(sizeof(*op), GFP_NOIO | __GFP_NOMEMALLOC | __GFP_NORETRY);
b5108822
DH
946 if (!op)
947 goto nomem;
948
8af7c124
TH
949 fscache_operation_init(&op->op, fscache_write_op,
950 fscache_release_write_op);
1362729b
DH
951 op->op.flags = FSCACHE_OP_ASYNC |
952 (1 << FSCACHE_OP_WAITING) |
953 (1 << FSCACHE_OP_UNUSE_COOKIE);
b5108822 954
5e4c0d97 955 ret = radix_tree_maybe_preload(gfp & ~__GFP_HIGHMEM);
b5108822
DH
956 if (ret < 0)
957 goto nomem_free;
958
959 ret = -ENOBUFS;
960 spin_lock(&cookie->lock);
961
94d30ae9
DH
962 if (!fscache_cookie_enabled(cookie) ||
963 hlist_empty(&cookie->backing_objects))
b5108822
DH
964 goto nobufs;
965 object = hlist_entry(cookie->backing_objects.first,
966 struct fscache_object, cookie_link);
967 if (test_bit(FSCACHE_IOERROR, &object->cache->flags))
968 goto nobufs;
969
970 /* add the page to the pending-storage radix tree on the backing
971 * object */
972 spin_lock(&object->lock);
1bccf513 973 spin_lock(&cookie->stores_lock);
b5108822
DH
974
975 _debug("store limit %llx", (unsigned long long) object->store_limit);
976
977 ret = radix_tree_insert(&cookie->stores, page->index, page);
978 if (ret < 0) {
979 if (ret == -EEXIST)
980 goto already_queued;
981 _debug("insert failed %d", ret);
982 goto nobufs_unlock_obj;
983 }
984
985 radix_tree_tag_set(&cookie->stores, page->index,
986 FSCACHE_COOKIE_PENDING_TAG);
987 page_cache_get(page);
988
989 /* we only want one writer at a time, but we do need to queue new
990 * writers after exclusive ops */
991 if (test_and_set_bit(FSCACHE_OBJECT_PENDING_WRITE, &object->flags))
992 goto already_pending;
993
1bccf513 994 spin_unlock(&cookie->stores_lock);
b5108822
DH
995 spin_unlock(&object->lock);
996
997 op->op.debug_id = atomic_inc_return(&fscache_op_debug_id);
998 op->store_limit = object->store_limit;
999
8fb883f3 1000 __fscache_use_cookie(cookie);
b5108822
DH
1001 if (fscache_submit_op(object, &op->op) < 0)
1002 goto submit_failed;
1003
1004 spin_unlock(&cookie->lock);
1005 radix_tree_preload_end();
1006 fscache_stat(&fscache_n_store_ops);
1007 fscache_stat(&fscache_n_stores_ok);
1008
8af7c124 1009 /* the work queue now carries its own ref on the object */
b5108822
DH
1010 fscache_put_operation(&op->op);
1011 _leave(" = 0");
1012 return 0;
1013
1014already_queued:
1015 fscache_stat(&fscache_n_stores_again);
1016already_pending:
1bccf513 1017 spin_unlock(&cookie->stores_lock);
b5108822
DH
1018 spin_unlock(&object->lock);
1019 spin_unlock(&cookie->lock);
1020 radix_tree_preload_end();
1021 kfree(op);
1022 fscache_stat(&fscache_n_stores_ok);
1023 _leave(" = 0");
1024 return 0;
1025
1026submit_failed:
1bccf513 1027 spin_lock(&cookie->stores_lock);
b5108822 1028 radix_tree_delete(&cookie->stores, page->index);
1bccf513 1029 spin_unlock(&cookie->stores_lock);
8fb883f3 1030 wake_cookie = __fscache_unuse_cookie(cookie);
b5108822
DH
1031 page_cache_release(page);
1032 ret = -ENOBUFS;
1033 goto nobufs;
1034
1035nobufs_unlock_obj:
1147d0f9 1036 spin_unlock(&cookie->stores_lock);
b5108822
DH
1037 spin_unlock(&object->lock);
1038nobufs:
1039 spin_unlock(&cookie->lock);
1040 radix_tree_preload_end();
1041 kfree(op);
8fb883f3
DH
1042 if (wake_cookie)
1043 __fscache_wake_unused_cookie(cookie);
b5108822
DH
1044 fscache_stat(&fscache_n_stores_nobufs);
1045 _leave(" = -ENOBUFS");
1046 return -ENOBUFS;
1047
1048nomem_free:
1049 kfree(op);
1050nomem:
1051 fscache_stat(&fscache_n_stores_oom);
1052 _leave(" = -ENOMEM");
1053 return -ENOMEM;
1054}
1055EXPORT_SYMBOL(__fscache_write_page);
1056
1057/*
1058 * remove a page from the cache
1059 */
1060void __fscache_uncache_page(struct fscache_cookie *cookie, struct page *page)
1061{
1062 struct fscache_object *object;
1063
1064 _enter(",%p", page);
1065
1066 ASSERTCMP(cookie->def->type, !=, FSCACHE_COOKIE_TYPE_INDEX);
1067 ASSERTCMP(page, !=, NULL);
1068
1069 fscache_stat(&fscache_n_uncaches);
1070
1071 /* cache withdrawal may beat us to it */
1072 if (!PageFsCache(page))
1073 goto done;
1074
1075 /* get the object */
1076 spin_lock(&cookie->lock);
1077
1078 if (hlist_empty(&cookie->backing_objects)) {
1079 ClearPageFsCache(page);
1080 goto done_unlock;
1081 }
1082
1083 object = hlist_entry(cookie->backing_objects.first,
1084 struct fscache_object, cookie_link);
1085
1086 /* there might now be stuff on disk we could read */
1087 clear_bit(FSCACHE_COOKIE_NO_DATA_YET, &cookie->flags);
1088
1089 /* only invoke the cache backend if we managed to mark the page
1090 * uncached here; this deals with synchronisation vs withdrawal */
1091 if (TestClearPageFsCache(page) &&
1092 object->cache->ops->uncache_page) {
1093 /* the cache backend releases the cookie lock */
52bd75fd 1094 fscache_stat(&fscache_n_cop_uncache_page);
b5108822 1095 object->cache->ops->uncache_page(object, page);
52bd75fd 1096 fscache_stat_d(&fscache_n_cop_uncache_page);
b5108822
DH
1097 goto done;
1098 }
1099
1100done_unlock:
1101 spin_unlock(&cookie->lock);
1102done:
1103 _leave("");
1104}
1105EXPORT_SYMBOL(__fscache_uncache_page);
1106
c4d6d8db
DH
1107/**
1108 * fscache_mark_page_cached - Mark a page as being cached
1109 * @op: The retrieval op pages are being marked for
1110 * @page: The page to be marked
1111 *
1112 * Mark a netfs page as being cached. After this is called, the netfs
1113 * must call fscache_uncache_page() to remove the mark.
1114 */
1115void fscache_mark_page_cached(struct fscache_retrieval *op, struct page *page)
1116{
1117 struct fscache_cookie *cookie = op->op.object->cookie;
1118
1119#ifdef CONFIG_FSCACHE_STATS
1120 atomic_inc(&fscache_n_marks);
1121#endif
1122
1123 _debug("- mark %p{%lx}", page, page->index);
1124 if (TestSetPageFsCache(page)) {
1125 static bool once_only;
1126 if (!once_only) {
1127 once_only = true;
36dfd116
FF
1128 pr_warn("Cookie type %s marked page %lx multiple times\n",
1129 cookie->def->name, page->index);
c4d6d8db
DH
1130 }
1131 }
1132
1133 if (cookie->def->mark_page_cached)
1134 cookie->def->mark_page_cached(cookie->netfs_data,
1135 op->mapping, page);
1136}
1137EXPORT_SYMBOL(fscache_mark_page_cached);
1138
b5108822
DH
1139/**
1140 * fscache_mark_pages_cached - Mark pages as being cached
1141 * @op: The retrieval op pages are being marked for
1142 * @pagevec: The pages to be marked
1143 *
1144 * Mark a bunch of netfs pages as being cached. After this is called,
1145 * the netfs must call fscache_uncache_page() to remove the mark.
1146 */
1147void fscache_mark_pages_cached(struct fscache_retrieval *op,
1148 struct pagevec *pagevec)
1149{
b5108822
DH
1150 unsigned long loop;
1151
c4d6d8db
DH
1152 for (loop = 0; loop < pagevec->nr; loop++)
1153 fscache_mark_page_cached(op, pagevec->pages[loop]);
b5108822 1154
b5108822
DH
1155 pagevec_reinit(pagevec);
1156}
1157EXPORT_SYMBOL(fscache_mark_pages_cached);
c902ce1b
DH
1158
1159/*
1160 * Uncache all the pages in an inode that are marked PG_fscache, assuming them
1161 * to be associated with the given cookie.
1162 */
1163void __fscache_uncache_all_inode_pages(struct fscache_cookie *cookie,
1164 struct inode *inode)
1165{
1166 struct address_space *mapping = inode->i_mapping;
1167 struct pagevec pvec;
1168 pgoff_t next;
1169 int i;
1170
1171 _enter("%p,%p", cookie, inode);
1172
1173 if (!mapping || mapping->nrpages == 0) {
1174 _leave(" [no pages]");
1175 return;
1176 }
1177
1178 pagevec_init(&pvec, 0);
1179 next = 0;
b307d465
JB
1180 do {
1181 if (!pagevec_lookup(&pvec, mapping, next, PAGEVEC_SIZE))
1182 break;
c902ce1b
DH
1183 for (i = 0; i < pagevec_count(&pvec); i++) {
1184 struct page *page = pvec.pages[i];
b307d465 1185 next = page->index;
c902ce1b
DH
1186 if (PageFsCache(page)) {
1187 __fscache_wait_on_page_write(cookie, page);
1188 __fscache_uncache_page(cookie, page);
1189 }
1190 }
1191 pagevec_release(&pvec);
1192 cond_resched();
b307d465 1193 } while (++next);
c902ce1b
DH
1194
1195 _leave("");
1196}
1197EXPORT_SYMBOL(__fscache_uncache_all_inode_pages);